get started guide for new users of aspen plus® v8 · get started guide for new users of aspen...

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Revised: Nov 9, 2012 1 Get Started Guide for New Users of Aspen Plus® V8.0 1. Lesson Objectives Learn to create a new Aspen Plus simulation Learn to construct flowsheet, including adding blocks and streams, reconnecting streams, and breaking/joining streams 2. Prerequisites Aspen Plus V8.0 3. Background This tutorial is for first-time Aspen Plus users. It shows new users: How to launch Aspen Plus UI Where to specify components Where to specify physical property methods How to move from Properties environment to Simulation environment How to construct a flowsheet The examples presented are solely intended to illustrate specific concepts and principles. They may not reflect an industrial application or real situation. 4. Aspen Plus Solution 4.01. From your desktop, select Start and then select Programs. 4.02. Select AspenTech, then Process Modeling V8.0 then Aspen Plus, and then Aspen Plus V8.0 The Aspen Plus main window appears, showing the Start Page. 4.03. Start a new simulation by selecting New on the File tab of the ribbon or pressing Ctrl+N.

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Page 1: Get Started Guide for New Users of Aspen Plus® V8 · Get Started Guide for New Users of Aspen Plus® V8.0 ... This tutorial is for first-time Aspen Plus users. It shows new users:

Revised: Nov 9, 2012

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Get Started Guide for New Users of Aspen Plus® V8.0

1. Lesson Objectives

Learn to create a new Aspen Plus simulation

Learn to construct flowsheet, including adding blocks and streams, reconnecting streams, and

breaking/joining streams

2. Prerequisites

Aspen Plus V8.0

3. Background

This tutorial is for first-time Aspen Plus users. It shows new users:

How to launch Aspen Plus UI

Where to specify components

Where to specify physical property methods

How to move from Properties environment to Simulation environment

How to construct a flowsheet

The examples presented are solely intended to illustrate specific concepts and principles. They may not

reflect an industrial application or real situation.

4. Aspen Plus Solution

4.01. From your desktop, select Start and then select Programs.

4.02. Select AspenTech, then Process Modeling V8.0 then Aspen Plus, and then Aspen Plus V8.0 The Aspen

Plus main window appears, showing the Start Page.

4.03. Start a new simulation by selecting New on the File tab of the ribbon or pressing Ctrl+N.

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4.04. Doing so brings up this page. Click on Blank Simulation and then click Create.

4.05. The following form comes up once the new simulation has been created. Enter the components that

appear in the simulation.

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4.06. Enter AMMONIA in the Component ID field. Because ammonia is a commonly used (and

unambiguously named) component, Aspen Plus fills in the Component name and Alias fields.

4.07. Enter ME-BR in the second row under Component ID. Enter METHYL-BROMIDE in the Component

name column for this row. Aspen Plus recognizes this component name, and so it fills in the Alias field.

If a component cannot be added by typing in the ID or name, click on the Find button to search for it.

4.08. Enter WATER in the third row under Component ID. Aspen Plus fills in the Component name and Alias

fields again. A Component ID is simply a handle for the user and so can be arbitrarily assigned; Aspen

Plus uses Component name to identify the component and find the necessary data for the simulation.

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4.09. Specify the property methods to be used in the simulation by clicking on the Methods button in the

Navigate group in the Home tab of the ribbon. Alternatively, click the Methods node in the navigation

pane.

4.10. Doing so brings up the following form. Select PENG-ROB (Peng-Robinson equation of state) in the Base

method field.

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4.11. When the user presses the Next Input button or hits the F4 key (the hotkey for the Next button), the

sheet that needs user’s attention next is displayed.

4.12. When the Next Input button is clicked after the property methods have been specified, this sheet

appears. No further action is required from the user for the binary interaction parameters because they

have been filled up automatically.

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4.13. Enter the simulation environment. Press the Simulation bar in the navigation pane on the left side of

your screen.

4.14. The simulation environment is shown below. The Model Palette is outlined in red below and a blown

up image of just the palette appears in the next figure.

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4.15. Create a stream in the flowsheet. Click on the Material button (outlined in red below) in the Model

Palette. Now, the mouse is in the insert mode.

4.16. Click on the flowsheet area in two different spots (one for stream source and again for stream

destination). A stream S1 is drawn in the flowsheet area. The mouse is still in the insert mode. Clicking

in the flowsheet area again will make another stream.

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4.17. Cancel insert mode. To exit the insert mode, click the Cancel insert mode button (outlined in the red

box below) in the Model Palette. Alternatively, right-click on the main flowsheet to cancel insert mode.

Note that the cursor changes shape when you enter or exit insert mode. It is a “plus” sign in insert

mode, and an arrow when not in insert mode.

4.18. Add and delete a stream. Add another stream in the same way as step 4.15. The flowsheet will look like

the screenshot below.

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4.19. Delete S2 by right-clicking it and selecting Delete Stream. Streams can also be deleted by clicking on the

stream and pressing the Delete Key.

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4.20. Add a mixer to the flowsheet. Click on the Mixer button in the Mixers/Splitters sheet of the Model

Palette, and then click on the flowsheet area. Cancel insert mode so more clicks do not add more mixer

blocks.

4.21. The flowsheet will look like the screenshot below.

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4.22. Connect the stream to the block. Right-click on the stream and click Reconnect Destination.

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4.23. B1’s inlet port (a red arrow attached to the left side of B1) is displayed. Note that red arrows represent

ports that must be connected with streams. Blue arrows represent ports for optional streams.

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4.24. Clicking this inlet port connects stream S1 to block B1. The flowsheet will look like the screenshot

below.

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4.25. Add a reactor to the flowsheet. Click on the Reactors sheet of the Model Palette. Click on the RCSTR

button.

4.26. In the flowsheet area, click on the area on the right side of B1. A RCSTR block B2 is placed on the

flowsheet as shown below. Now, cancel insert mode.

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4.27. Connect the mixer to the reactor. Click on the Material button in the Model Palette. Doing so will show

all available inlet and outlet ports. Again, red ports are ports that require stream connections, blue are

optional.

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4.28. Click on the red arrow pointing out of B1 and then click the red arrow pointing into the reactor. Now,

B1 and B2 are connected with a stream. Add an effluent stream by clicking on the red arrow coming

from the reactor and then click on a blank spot on the right of B2. The flowsheet should look like the

screenshot below. The label for S3 is hidden because the B1 and B2 are so close together.

4.29. Clicking on the Material button in Model Palette again shows that there are only blue arrows: all

required ports have been connected with streams.

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4.30. Add a second feed stream to the mixer. Click on the Material button in Model Palette, click on the blue

arrow pointing into the mixer, and then click a blank spot in the flowsheet. The flowsheet will look like

the screenshot below.

4.31. Add a distillation column. Click to the Columns sheet of the Model Palette. Click on the RadFrac

button.

4.32. Click on the flowsheet to add the column. The flowsheet will look like the screenshot below.

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4.33. Reconnect the destination of stream S3. Either right-click S3 and select Reconnect Destination or

double click the white arrow at the right end of S3, and then click the red arrow pointing into the

column.

4.34. Reconnect stream source to create recycle stream. Right-click S4 and select Reconnect Source.

4.35. Click on the red arrow coming out from the bottom of the column. The flowsheet will look like the

screenshot below.

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4.36. Move the recycle stream by clicking and dragging so that the stream is below the blocks. Having a clean

flowsheet becomes very important when there are many blocks and streams.

4.37. Add a stream coming from the top of the column.

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4.38. Add a heater for the recycle stream S4. Break the recycle stream S4 by right-clicking on it and selecting

Break Stream.

4.39. The flowsheet will look like the screenshot below.

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4.40. Click on the Heat Exchangers sheet of the Model Palette. Click the Heater button. Add it to the

flowsheet below the reactor.

4.41. Blocks in Apsen Plus typically have inlets on the left side and outlets on the right side. For B4, we need

its inlet to enter on the right side and its outlet to exit on the left si de. Right-click on B4 and select

Rotate Icon | Flip Horizontal as shown below.

4.42. Connect the outlet of the heater to the mixer by reconnecting the source of S4. Create a stream going

to the inlet of B4. The flowsheet will look like the screenshot below.

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4.43. Join the streams to complete the recycle loop. Click on stream S6, press and hold the Ctrl key on your

keyboard, and then, click S7. Then, release the Ctrl key on your keyboard. Both S6 and S7 are selected.

Right-click one of them and select Join Streams.

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4.44. The flowsheet will look like the screenshot below.

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4.45. Rename a block. Right-click on B2 and select Rename Block. Enter a new name, like REACTOR. Both

streams and blocks can be renamed in this way. Alternatively, a block can be renamed by clicking on the

block and pressing Ctrl+M. A stream can be renamed in a similar way.

4.46. You can see the renamed block in the screenshot below.

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4.47. Reset the view in the main flowsheet. Pressing the Home key resets the view so the whole flowsheet

fills the view. This is shown in the screenshot below. We have drawn our flowsheet. Hitting F4 key will

bring you to the first incomplete form and you can start entering specifications (e.g., stream conditions)

for the simulation.

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5. Conclusions

After going through steps described in this tutorial, first-time Aspen Plus users should be able to follow the steps

of our examples.

6. Copyright

Copyright © 2012 by Aspen Technology, Inc. (“AspenTech”). All rights reserved. This work may not be

reproduced or distributed in any form or by any means without the prior written consent of

AspenTech. ASPENTECH MAKES NO WARRANTY OR REPRESENTATION, EITHER EXPRESSED OR IMPLIED, WITH

RESPECT TO THIS WORK and assumes no liability for any errors or omissions. In no event will AspenTech be

liable to you for damages, including any loss of profits, lost savings, or other incidental or consequential

damages arising out of the use of the information contained in, or the digital files supplied with or for use with,

this work. This work and its contents are provided for educational purposes only.

AspenTech®, aspenONE®, and the Aspen leaf logo, are trademarks of Aspen Technology, Inc.. Brands and

product names mentioned in this documentation are trademarks or service marks of their respective companies.